2009Unpublished venueRequires access

Depth of field extension using variable annular pupil

Deokhwa Hong, Hyungsuck Cho, Min Young Kim, Jeon Il Moon

Open publisher page 3 citations

Abstract

The DOF (depth of field) of an imaging system is closely related to the pupil function that describes the characteristics of the pupil such as size and shape. Shallow DOF is especially problematic in microscopic optical imaging systems because they have relatively large aperture size for high optical resolution. In this paper, a new DOF extension method is proposed. This is to acquire an image by integrating the incoming light while changing the size of annular pupil. By divining the pupil into annular form, the effect of the defocus aberration is reduced. Theoretical background and preliminary experimental results are shown. The results show that the DOF can effectively be extended by this method.

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What this paper is about

The DOF (depth of field) of an imaging system is closely related to the pupil function that describes the characteristics of the pupil such as size and shape. Shallow DOF is especially problematic in microscopic optical imaging systems because they have relatively large aperture size for high optical resolution. In this paper, a new DOF extension method is proposed. This is to acquire an image by integrating the incoming light while changing the size of annular pupil. By divining the pupil into annular form, the effect of the defocus aberration is reduced. Theoretical background and preliminary experimental results are shown. The results show that the DOF can effectively be extended by this method.

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OpenAlex reports 3 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

The DOF (depth of field) of an imaging system is closely related to the pupil function that describes the characteristics of the pupil such as size and shape. Shallow DOF is especially problematic in microscopic optical imaging systems because they have relatively large aperture size for high optical resolution. In this paper, a new DOF extension method is proposed. This is to acquire an image by integrating the incoming light while changing the size of annular pupil. By divining the pupil into annular form, the effect of the defocus aberration is reduced. Theoretical background and preliminary experimental results are shown. The results show that the DOF can effectively be extended by this method.

Key concepts: Pupil function, Pupil, Exit pupil, Depth of field, Pupil size, Optics, Entrance pupil, Aperture (computer memory)

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